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The case for metamorphic base metal mineralization: pyrite chemical, Cu and S isotope data from the Cu-Zn deposit at Kupferberg in Bavaria, Germany

机译:变质基金金属矿化的案例:来自德国巴伐利亚州巴伐利亚州克普夫斯伯格的铜矿矿床的黄铁矿化学,Cu和S同位素数据

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The stratiform Cu-Zn sulfide deposit at Kupferberg in Germany represents Bavaria's largest historic base metal producer. The deposit is hosted by Early Paleozoic volcano-sedimentary strata at the margin of a high-grade allochthonous metamorphic complex. The present paper reports on the first Cu and S isotope data as well as trace element analyses of pyrite from this unusual deposit. The new data point to syn-orogenic mineralization that was driven by metamorphic fluids during nappe emplacement. Primary Cu ore occurs as texturally late chalcopyrite within stratiform laminated pyrite in black shale in two different tectonostratigraphic units of very low and low metamorphic grade, respectively, that were juxtaposed during the Variscan orogeny. Trace element contents of different pyrite types suggest the presence of at least one hydrothermal pyrite generation (mean Co/Ni = 35), with the other pyrite types being syn-sedimentary/early diagenetic (mean Co/Ni = 3.7). Copper isotope analyses yielded a narrow delta Cu-65 range of -0.26 to 0.36aEuro degrees for all ore types suggesting a hypogene origin for the principal chalcopyrite mineralization. The ore lenses in the two different tectonostratigraphic units differ with regard to their delta S-34 values, but little difference exists between poorly and strongly mineralized domains within a given locality. A genetic model is proposed in which syn-sedimentary/early diagenetic pyrite with subordinate chalcopyrite and sphalerite formed in black shale beds in the two different stratigraphic units, followed by late-tectonic strata-internal, hydrothermal mobilization of Fe, Cu, and Zn during syn-orogenic thrusting, which concentrated especially Cu to ore grade. In agreement with this model, Cu distribution in stream sediments in this region shows distinct enrichments bound to the margin of the allochthonous complex. Thus, Kupferberg can be considered a rare example of a syn-orogenic Cu deposit with the Cu probably being derived from syn-sedimentary/early diagenetic pyrite contained in Early Paleozoic shale units.
机译:德国Kupferberg的层状Cu-Zn硫化物矿床代表巴伐利亚最大的历史基础金属生产商。该矿床由早期古生代火山 - 沉积地层托管,在高档外形变质复合物的边缘处。本文报告了第一个Cu和S同位素数据以及来自这种异常沉积物的黄铁矿痕量元素分析。新的数据指向在Nappe施加期间由变质液驱动的同步矿化的矿化。原发性Cu Ore在黑色页岩中的层状层压硫铁矿内发生的两种不同的构造分子单位,分别是非常低,变质等级的两种不同的细胞质分别,在瓦森扬山orency期间并置。不同硫铁矿类型的痕量元素含量表明存在至少一个水热硫铁矿产生(平均CO / Ni = 35),其它硫铁矿类型是同步沉积/早期成岩(平均CO / Ni = 3.7)。铜同位素分析产生狭窄的Delta Cu-65范围-0.26至0.36Aeuro度,适用于所有矿石类型,表明主要硫代铜矿矿化的二羟基源性。两种不同构造的图形单元中的矿石镜片关于其Δ的S-34值不同,但在给定局部性的差异和强烈的矿化结构域之间存在较小的差异。提出了一种遗传模型,其中两种不同地层单元中的黑色页岩床中形成了遗传模型和股骨晶石,其在两种不同的地层单元中,其次是后构造阶层 - 内部,水热动员Fe,Cu和Zn Syn-Orogenic推动,其浓缩浓缩铜至矿石等级。在该模型的同意中,该区域中溪流沉积物中的Cu分布显示出与表发起复杂的边缘结合的明显富集。因此,Kupferberg可以被认为是一种罕见的含有Syn-Orogenic Cu沉积物的稀有实例,其中Cu可能是源自早期古生代页岩单位中含有的同步沉积/早期成岩岩石。

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